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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Lesions to right posterior parietal cortex impair visual depth perception from disparity but not motion cues
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Lesions to right posterior parietal cortex impair visual depth perception from disparity but not motion cues

机译:右顶叶皮层病变损害视差的视觉深度知觉,但不影响运动提示

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摘要

The posterior parietal cortex (PPC) is understood to be active when observers perceive three-dimensional (3D) structure. However, it is not clear howcentral this activity is in the construction of 3D spatial representations. Here, we examine whether PPC is essential for two aspects of visual depth perception by testing patients with lesions affecting this region. First, we measured subjects' ability to discriminate depth structure in various 3D surfaces and objects using binocular disparity. Patients with lesions to right PPC (N = 3) exhibited marked perceptual deficits on these tasks, whereas those with left hemisphere lesions (N = 2) were able to reliably discriminate depth as accurately as control subjects. Second, we presented an ambiguous 3D stimulus defined by structure from motion to determine whether PPC lesions influence the rate of bistable perceptual alternations. Patients' percept durations for the 3D stimulus were generally within a normal range, although the two patients with bilateral PPC lesions showed the fastest perceptual alternation rates in our sample. Intermittent stimulus presentation reduced the reversal rate similarly across subjects. Together, the results suggest that PPC plays a causal role in both inferring and maintaining the perception of 3D structure with stereopsis supported primarily by the right hemisphere, but do not lend support to the view that PPC is a critical contributor to bistable perceptual alternations.
机译:当观察者感知到三维(3D)结构时,顶叶后皮质(PPC)被认为是活跃的。但是,尚不清楚此活动在3D空间表示的构建中有多集中。在这里,我们通过测试具有影响该区域的病变的患者,来检查PPC对于视觉深度感知的两个方面是否必不可少。首先,我们使用双目视差测量了对象区分各种3D表面和对象中深度结构的能力。右PPC病变(N = 3)的患者在这些任务上表现出明显的知觉缺陷,而左半球病变(N = 2)的患者能够像对照组一样准确地辨别深度。其次,我们提出了由运动结构定义的模糊3D刺激,以确定PPC损伤是否影响双稳态知觉交替的速率。尽管3名双侧PPC病变患者在我们的样本中显示出最快的知觉交替率,但患者对3D刺激的知觉持续时间通常在正常范围内。间歇性刺激表现类似地降低了受试者的逆转率。在一起的结果表明,PPC在推断和维持3D结构的感知方面起着因果作用,而立体视主要由右半球支持,但不支持PPC是双稳态感知交替的关键因素。

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